Abstract
Secretory IgA (SIgA) is a multi-polypeptide complex consisting of a secretory component (SC) covalently attached to dimeric IgA containing one joining (J) chain. We present the analysis of both the N- and O-glycans on the individual peptides from this complex. Based on these data, we have constructed a molecular model of SIgA1 with all its glycans, in which the Fab arms form a T shape and the SC is wrapped around the heavy chains. The O-glycan regions on the heavy (H) chains and the SC N-glycans have adhesin-binding glycan epitopes including galactose-linked β1-4 and β1-3 to GlcNAc, fucose-linked α1-3 and α1-4 to GlcNAc and α1-2 to galactose, and α2-3 and α2-6-linked sialic acids. These glycan epitopes provide SIgA with further bacteria-binding sites in addition to the four Fab-binding sites, thus enabling SIgA to participate in both innate and adaptive immunity. We also show that the N-glycans on the H chains of both SIgA1 and SIgA2 present terminal GlcNAc and mannose residues that are normally masked by SC, but that can be unmasked and recognized by mannose-binding lectin, by disrupting the SC-H chain noncovalent interactions.
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CITATION STYLE
Royle, L., Roos, A., Harvey, D. J., Wormald, M. R., Van Gijlswijk-Janssen, D., Redwan, E. R. M., … Rudd, P. M. (2003). Secretory IgA N- and O-glycans provide a link between the innate and adaptive immune systems. Journal of Biological Chemistry, 278(22), 20140–20153. https://doi.org/10.1074/jbc.M301436200
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